Forest of Mercia Timberland Trail (Short Route)
The print
Printed to order at 300 DPI, rendered natively at your size and never upscaled. Print only; the frame in the photos is for scale.
Shipping & returns
Printed in 2 to 5 business days, then 3 to 5 in transit within the US, rolled in a sturdy tube. Free US shipping; outside the US, shipping is calculated at checkout. 14-day reprint-or-refund guarantee, any reason, no return shipping. You have 1 hour after checkout to change trail, style or size, just reply to your confirmation email. Full returns policy.
About the Forest of Mercia Timberland Trail (Short Route) trail
Forest of Mercia Timberland Trail (Short Route) covers 8.2 miles as a loop in the United Kingdom. The route rises 52 feet in total, and its elevation spans 413 to 495 feet. The steepest pitch reaches 4 percent, against an average of 6 feet of gain per mile. On our gain-and-distance scale it falls in the easiest band. The nearest town is Great Wyrley, 1 miles away.
The trail
The Forest of Mercia lies within the northernmost boundary of the more ancient and well-known Forest of Arden which covered the area when it formed part of the Kingdom of Mercia, and is one of twelve community forests established close to major towns and cities across England. It covers an area of 92 square miles (23,000 hectares), and is focused around the town of Cannock in South Staffordshire.
Text: Wikipedia, CC BY-SA 4.0
Questions about the Forest of Mercia Timberland Trail (Short Route) print
What sizes does the Forest of Mercia Timberland Trail (Short Route) poster come in?
Is this made from real elevation data?
How hard is Forest of Mercia Timberland Trail (Short Route)?
Trail geometry and place names for this print: Map data © OpenStreetMap contributors, ODbL. Elevation: AWS Terrain Tiles. The derived trail dataset is published at /open-data. Best months are an estimate from NASA POWER climate data (CC BY 4.0), 2001 to 2020 monthly averages adjusted to the trail's elevation, not an official season; check current conditions and closures.